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Performance improvement with a robust self tuned fuzzy logic controller for generator control in wind energy system

机译:鲁棒的自调整模糊逻辑控制器在风能系统中控制发电机的性能提高

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In this paper a line excited cage generator is considered which is connected with the grid through a bidirectional PWM converter-inverter system. The generator is controlled by indirect field oriented control (IFOC) scheme. Fuzzy logic controllers (FLC) are used for the control purpose. The first FLC is used in the outer speed loop to track the generator speed with the reference speed for maximum power extraction and the second and third FLCs are used in the inner current loops for control of active and reactive power. The FLCs use normalized values of error and change of error as their inputs. The outputs of the FLCs are again multiplied with gains to give the control signals. A trapezoidal membership function is taken for the error input and triangular membership functions are taken for change of error as well as output. Again a robust self tuned fuzzy logic controller (STFLC) scheme is used in place of the FLCs. In this scheme a tuning FLC (TFLC) is used to tune the output gain of the main FLC. The inputs to both the FLCs are normalized values of error and change of error. The output of the TFLC is the output gain of the main FLC. The main FLC is similar to the FLC as discussed in the previous scheme. In the TFLC triangular membership functions are used for all input as well as output variables. The performances of both the schemes are simulated and a comparison is given. The simulation work is done in MATLAB coding environment.
机译:在本文中,考虑了一种线路励磁笼式发电机,该发电机通过双向PWM转换器-逆变器系统与电网连接。发电机由间接磁场定向控制(IFOC)方案控制。模糊逻辑控制器(FLC)用于控制目的。第一个FLC用于外部速度环路中,以参考速度跟踪发电机转速,以获取最大功率,第二和第三FLC用于内部电流环路中,以控制有功功率和无功功率。 FLC将误差和误差变化的归一化值用作其输入。 FLC的输出再次与增益相乘以提供控制信号。梯形隶属函数用于误差输入,三角形隶属函数用于误差以及输出的变化。再次使用鲁棒的自调整模糊逻辑控制器(STFLC)方案代替FLC。在该方案中,使用调谐FLC(TFLC)来调谐主FLC的输出增益。两个FLC的输入均为误差和误差变化的归一化值。 TFLC的输出是主FLC的输出增益。主FLC与先前方案中讨论的FLC相似。在TFLC中,三角隶属函数用于所有输入和输出变量。仿真了两种方案的性能,并进行了比较。仿真工作是在MATLAB编码环境中完成的。

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